MAX3804 Evaluation Kit. Evaluates: MAX3804. Features DC-Coupled EV Kit SMA Connectors for All High-Speed Inputs and Outputs Fully Assembled and Tested
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1 ; Rev 1; 2/09 General Description The MAX3804 DC-coupled evaluation kit (EV kit) simplifies evaluation of the MAX Gbps settable equalizer. The EV kit enables full testing of the device functions including all equalization settings. SMA connectors with 50Ω controlled-impedance transmission lines to the MAX3804 are provided for all CML input and output ports. PART MAX3804EVKIT# #Denotes RoHS compliant. Ordering Information TYPE EV Kit DESIGNATION QTY DESCRIPTION C1 C5 5 ±10% ceramic capacitors (0402) C6 1 ±10% ceramic capacitor (0603) C7 C10 4 ±10% tantalum capacitors (case-b) J1 J4 4 SMA connectors, tab contact JP1, JP2, JP3 3 2-pin headers, 0.1in centers JPEQ1, JPEQ2, JPEQ3 3 3-pin headers, 0.1in centers R3 1 10k resistor (0402) R4 1 12k resistor (0402) R5 1 8k resistor (0402) GND, V CC, V CC1, V CC2, V EE, TP4, TP5 7 Test points Component List U Gbps settable receive equalizer (16 TQFN) Maxim MAX3804ETE#G16 None 5 Shunts None 1 PCB: MAX3804 EV kit board# None 1 MAX3804 data sheet SUPPLIER PHONE WEBSITE AVX Coilcraft, Inc Murata Electronics North America, Inc. Component Suppliers Zetex Semiconductors MAX3804 Evaluation Kit Features DC-Coupled EV Kit SMA Connectors for All High-Speed Inputs and Outputs Fully Assembled and Tested Quick Start Note: The MAX3804 EV kit is a DC-coupled evaluation board. Care must be taken to ensure that no direct short between the supply voltage and supply ground exists. Use external coupling capacitors on the input and output when AC-coupling is desired. DC-coupled operation with positive V CC supplies normally causes permanent damage to laboratory test equipment (typical oscilloscope, BERT). The MAX3804 EV kit must be operated from a negative V EE supply when DC-coupled to normal laboratory equipment. 1) Connect a -3.3V power supply to TP3 (). Connect the power-supply ground to TP2 (GND) and J6 (). Install shunts in JP2 and JP3, and remove shunt from JP1. 2) Install shunts across pins 2 and 3 of JPEQ1, JPEQ2, and JPEQ3 for minimal equalization (0, 0, 0). See Table 1 for the relationship between nominal path loss and FR-4 microstrip path length. 3) Apply a differential input signal (400mV P-P to 1200mV P-P ) between SMA connectors J1 and J2 (SDI+ and SDI-). 4) Attach a differential high-speed oscilloscope with a 50Ω input to SMA connectors J3 and J4 (SDO+ and SDO-) to observe the output of the equalizer. Table 1. Relationship Between Nominal Path Loss and FR-4 Microstrip Path Length JPEQ3 JPEQ2 JPEQ1 NOMINAL 6-mil FR-4 MICROSTRIP LENGTH (in) Note: 0 refers to pins 2 and 3 shunted. 1 refers to pins 1 and 2 shunted. Maxim Integrated Products 1 For pricing, delivery, and ordering information, please contact Maxim Direct at , or visit Maxim s website at
2 MAX3804 Evaluation Kit COMPONENT NAME FUNCTION JPEQ1 EQ1 Equalizer boost control logic input LSB JPEQ2 EQ2 Equalizer boost control logic input JPEQ3 Adjustment and Control Descriptions (see Quick Start) EQ3 Equalizer boost control logic input MSB Alternative Supply Configurations AC-Coupled Operation with V CC1 = V CC2 = +1.65V Connect a +3.3V power supply to J6 (). Connect a +1.65V power supply to TP1 (1) and J5 (2). Connect the power-supply ground to TP2 (GND). Remove shunts JP2 and JP3. Install shunt JP1. Use external AC-coupling for connecting to external laboratory equipment (typical oscilloscope, BERT). DC-Coupled Operation with Laboratory Equipment Connect a +1.85V power supply to J6 (). Connect a -1.65V power supply to TP3 (). Connect the power-supply ground to TP2 (GND). Install shunts JP2 and JP3. Remove shunt JP1. With this setup the part can be DC-coupled to external laboratory equipment (typical oscilloscope, BERT). DC-Coupled Operation with Oscilloscopes and BERTs The MAX3804 is designed with DC-coupled inputs and outputs, implemented with internal 50Ω terminations to 1 (SDI±) and 2 (SDO±). Laboratory oscilloscopes and BERTs normally terminate their inputs and outputs with 50Ω to ground. When the MAX3804 s are connected to a positive supply, a DC path exists from the power supply to the ports of the oscilloscope or BERT. This configuration can cause permanent damage to the oscilloscope or BERT. When the MAX3804 EV kit is being used with normal oscilloscopes or BERTs, either external AC-coupling must be provided or 1 and 2 must be connected to ground (i.e., using a negative supply). Failure to do so may permanently damage laboratory equipment. C5 J5 2 J6 TP3 TP2 GND TP1 1 C10 C9 C7 C8 TP5 JP3 C6 TP4 JP1 JP2 2 1 J1 SDI+ C1 I 1 I C2 R3 10kΩ R4 12kΩ V CC1 SDI+ SDI- V CC1 JPEQ1 16 GND EG N.C JPEQ2 MAX3804* EQ2 U1 JPEQ3 EQ3 N.C. GND V CC2 SDO+ J2 SDI- SDO- V CC2 2 C C4 J3 SDO- J4 SDO+ R5 8kΩ TP8 TP9 TP10 *EXPOSED PAD IS CONNECTED TO. Figure 1. MAX3804 Schematic Diagram 2
3 Figure 2. MAX3804 Component Placement Guide Figure 3. MAX3804 PCB Layout Component Side 3
4 Figure 4. MAX3804 PCB Layout Ground Plane Figure 5. MAX3804 PCB Layout Power Plane 4
5 Figure 6. MAX3804 PCB Layout Solder Side 5
6 REVISION NUMBER REVISION DATE DESCRIPTION Revision History PAGES CHANGED 0 4/03 Initial release. 1 2/09 Changed the Ordering Information to include RoHS compliance. 1 Updated the MAX3804 part number for U1 in the Component List. 1 Replaced figures 2 to 6. 3, 4, 5 Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 6 Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA Maxim Integrated Products Maxim is a registered trademark of Maxim Integrated Products, Inc.
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General Description The MAX98357 development board (DEV board) is a fully assembled and tested PCB that evaluates the MAX98357 I2S digital input Class D power amplifier. The DEV board operates from a single
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General Description The MAX5X05 evaluation kit (EV kit) demonstrates the MAX5705 and MAX5805 12-bit, single-channel, lowpower DACs with internal reference and buffered voltage output. The MAX5705 and the
More information+Denotes lead(pb)-free and RoHS compliant.
19-4161; Rev 1; 12/08 MAX5498 Evaluation Kit General Description The MAX5498 evaluation kit (EV kit) is an assembled and tested PCB that demonstrates the MAX5498 10-bit (1024-tap), dual, nonvolatile, SPI
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General Description The MAX31865PMB1 peripheral module (Pmod ) provides the necessary hardware to interface the MAX31865 RTD-to-digital converter to any system that utilizes Pmodcompatible expansion ports
More informationEvaluates: MAX MAX20326 Evaluation Kit. General Description. Quick Start. Features. EV Kit Contents. Required Equipment.
General Description The MAX20326 evaluation kit (EV kit) provides a convenient way to evaluate the MAX20326 dual precision bus accelerator IC. The EV kit breaks out the pins of the IC to test points enabling
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19-2467; Rev 0; 4/02 MAX1236 Evaluation Kit General Description The MAX1236 evaluation kit (EV kit) is designed to evaluate the MAX1236. The MAX1236 is a 12-bit, four-channel (two differential-channel)
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19-2707; Rev 0; 10/02 MAX6692 Evaluation System/Evaluation Kit General Description The MAX6692 evaluation system (EV system) consists of a MAX6692 evaluation kit (EV kit) and a companion Maxim SMBus interface
More information+Denotes lead-free and RoHS compliant.
19-4258; Rev 0; 8/08 General Description The MAX9591 evaluation kit (EV kit) demonstrates the MAX9591 reference-voltage generator for gamma correction in TFT-LCD panels, such as those found in highresolution
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19-2163; Rev 0; 9/01 MAX7428 Evaluation Kit General Description The MAX7428 evaluation kit (EV kit) is an assembled and tested circuit board that demonstrates the MAX7428 standard-definition video reconstruction
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